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The effect of avian eggshell membrane structure on microbial penetration: A simulation study
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Title
The effect of avian eggshell membrane structure on microbial penetration: A simulation study
Issued Date
2024-06
Citation
Sim, Seungwoo. (2024-06). The effect of avian eggshell membrane structure on microbial penetration: A simulation study. BioSystems, 240. doi: 10.1016/j.biosystems.2024.105234
Type
Article
Author Keywords
Bio-inspired materialAvian eggshell membraneAntimicrobial mechanismSimulation model
Keywords
BACTERIAL PENETRATIONCUTICLESHELLBARRIEREGG CONTAMINATION
ISSN
0303-2647
Abstract
Avian eggshells exhibit excellent antimicrobial properties. In this study, we conducted simulation experiments to explore the defense mechanisms of eggshell membranes with regards to their physical features. We developed a mathematical model for the movement of microorganisms and estimated their penetration ratio into eggshell membranes based on several factors, including membrane thickness, microbial size, directional drift, and attachment probability to membrane fibers. These results not only suggest that an eggshell membrane with multiple layers and low porosity indicates high antimicrobial performance, but also imply that the fibrous network structure of the membrane might contribute to effective defense. Our simulation results aligned with experimental findings, specifically in measuring the penetration time of Escherichia coli through the eggshell membrane. We briefly discuss the significance and limitations of this pilot study, as well as the potential for these results, to serve as a foundation for the development of antimicrobial materials. © 2024 Elsevier B.V.
URI
http://hdl.handle.net/20.500.11750/57109
DOI
10.1016/j.biosystems.2024.105234
Publisher
Elsevier
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Lee, Sang-im이상임

Department of New Biology

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